Abstract
Background: Ovarian somatic cells support the maturation and fertility of oocytes. Metabolic desaturation of fatty acids in these cells has a positive paracrine impact on the maturation of oocytes. We hypothesized that the enzyme stearoyl-CoA desaturase 1 (SCD1) in granulosa cells regulates the lipid cargo of exosomes secreted from these cells by maintaining the balance between saturated and unsaturated lipids. We investigated the effect of SCD1 on exosome lipid content in a cumulus-granulosa cell model under physiologically relevant in vitro conditions. Methods: Non-luteinized human COV434 granulosa cells were subjected to treatment with an inhibitor of SCD1 (SCDinhib) alone, in combination with oleic acid, or under control conditions. Subsequently, the exosomes were isolated and characterized via nanoparticle tracking analysis, transmission electron microscopy, and Western blotting. We used liquid chromatography mass spectrometry to investigate the lipidomic profiles. We used quantitative PCR with TaqMan primers to assess the expression of genes involved in lipogenesis and control of cell cycle progression. Results: A trend toward exosome production was observed with a shift toward smaller exosome sizes in cells treated with SCD1inhib. This trend reached statistical significance when SCDinhib was combined with oleic acid supplementation. SCD1 inhibition led to the accumulation of saturated omega-6 lipids in exosomes. The latter effect was reversed by oleic acid supplementation, which also improved exosome production and suppressed the expression of fatty acid synthase and Cyclin D2. Conclusion: These findings underscore the critical role of de novo fatty acid desaturation in the regulation of the export of specific lipids through exosomes, with potential implications for controlling intercellular communication within the ovary.
| Original language | English |
|---|---|
| Article number | 112317 |
| Journal | Molecular and Cellular Endocrinology |
| Volume | 592 |
| Pages (from-to) | 112317 |
| ISSN | 0303-7207 |
| DOIs | |
| Publication status | Published - 01.2024 |
Funding
The project and the first author were supported by the Alexander von Humboldt Foundation. The authors thank the Heidelberg University Lipidomics Platform for their expertise in conducting lipid composition assays, the Heidelberg University Biochemistry Center (BZH) for access to ultracentrifuges, Ulrike Ganserer in the electron microscopy laboratory for her assistance with imaging, and Agatha Rosenthal at Malvern Panalytical GmbH for her technical assistance with NTA analysis.
| Funders | Funder number |
|---|---|
| Alexander von Humboldt Foundation | |
| Heidelberg University Lipidomics Platform | |
| BZH |
Research Areas and Centers
- Centers: Center for Pre-Implantation Diagnostics (PID)
DFG Research Classification Scheme
- 2.22-21 Gynaecology and Obstetrics
- 2.22-04 Anatomy and Physiology